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수직축 조류 터빈 발전효율 평가를 위한 유동-터빈 연동 CFD 해석 (II)
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  • 수직축 조류 터빈 발전효율 평가를 위한 유동-터빈 연동 CFD 해석 (II)
저자명
이진학,오상호,박진순,이광수,이상열,Yi. Jin-Hak,Oh. Sang-Ho,Park. Jin-Soon,Lee. Kwang-Soo,Lee. Sang-Yeol
간행물명
韓國海洋工學會誌
권/호정보
2013년|27권 3호|pp.73-78 (6 pages)
발행정보
한국해양공학회
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
서지반출

기타언어초록

CFD (computational fluid dynamics) analyses that considered the dynamic interaction effects between the flow and a turbine were performed to evaluate the power output characteristics of two representative vertical-axis tidal-current turbines: an H-type Darrieus turbine and Gorlov helical turbine (GHT). For this purpose, a commercial CFD code, Star-CCM+, was utilized, and the power output characteristic were investigated in relation to the scale ratio using the relation between the Reynolds number and the lift-to-drag ratio. It was found that the power coefficients were significantly reduced when the scaled model turbine was used, especially when the Reynolds number was lower than $10^5$. The power output characteristics of GHT in relation to the twisting angle were also investigated using a three-dimensional CFD analysis, and it was found that the power coefficient was maximized for the case of a Darrieus turbine, i.e., a twisting angle of $0^{circ}$, and the torque pulsation ratio was minimized when the blade covered $360^{circ}$ for the case of a turbine with a twisting angle of $120^{circ}$.